Wild Plant Seed Office, Baekdudaegan National Arboretum, Bongwha 36209, Republic of Korea.
Arboretum Education Office, Baekdudaegan National Arboretum, Bongwha 36209, Republic of Korea.
Genes (Basel). 2024 Jun 10;15(6):761. doi: 10.3390/genes15060761.
The chloroplast genome plays a crucial role in elucidating genetic diversity and phylogenetic relationships. L. (grapevine) is an economically important species, prompting exploration of wild genetic resources to enhance stress resilience. We meticulously assembled the chloroplast genomes of two Korean L. species, Thunb. and Rupr., contributing valuable data to the Korea Crop Wild Relatives inventory. Through exhaustive specimen collection spanning diverse ecological niches across South Korea, we ensured comprehensive representation of genetic diversity. Our analysis, which included rigorous codon usage bias assessment and repeat analysis, provides valuable insights into amino acid preferences and facilitates the identification of potential molecular markers. The assembled chloroplast genomes were subjected to meticulous annotation, revealing divergence hotspots enriched with nucleotide diversity, thereby presenting promising candidates for DNA barcodes. Additionally, phylogenetic analysis reaffirmed intra-genus relationships and identified related crops, shedding light on evolutionary patterns within the genus. Comparative examination with chloroplast genomes of other crops uncovered conserved sequences and variable regions, offering critical insights into genetic evolution and adaptation. Our study advances the understanding of chloroplast genomes, genetic diversity, and phylogenetic relationships within species, thereby laying a foundation for enhancing grapevine genetic diversity and resilience to environmental challenges.
叶绿体基因组在阐明遗传多样性和系统发育关系方面起着至关重要的作用。李属(葡萄属)是一种具有重要经济价值的物种,因此探索其野生遗传资源以提高对胁迫的抗性显得尤为重要。我们精心组装了两种韩国李属物种,即山梨和毛樱桃的叶绿体基因组,为韩国作物野生近缘种资源编目提供了有价值的数据。通过在韩国各地广泛收集不同生态位的标本,我们确保了遗传多样性的全面代表。我们的分析包括严格的密码子使用偏性评估和重复序列分析,为氨基酸偏好提供了有价值的见解,并有助于鉴定潜在的分子标记。组装的叶绿体基因组经过了细致的注释,揭示了富含核苷酸多样性的热点区域,从而为 DNA 条形码提供了有前景的候选序列。此外,系统发育分析证实了种内的关系,并鉴定了相关的作物,揭示了属内的进化模式。与其他作物的叶绿体基因组进行比较分析,揭示了保守序列和可变区域,为遗传进化和适应提供了重要的见解。本研究推进了对李属叶绿体基因组、遗传多样性和系统发育关系的理解,为增强葡萄遗传多样性和对环境挑战的抗性奠定了基础。